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PDCD5 调节 iNKT 细胞终末成熟和 iNKT1 命运决定。

PDCD5 regulates iNKT cell terminal maturation and iNKT1 fate decision.

机构信息

Key Laboratory of Medical Immunology, Ministry of Health. Department of Immunology, School of Basic Medical Sciences, Peking University Health Science Center, 38 Xue Yuan Road, Beijing, China.

Peking University Institute of Hematology, People's Hospital, Beijing, China.

出版信息

Cell Mol Immunol. 2019 Sep;16(9):746-756. doi: 10.1038/s41423-018-0059-2. Epub 2018 Jun 19.

Abstract

Invariant natural killer T1 (iNKT1) cells are characterized by the preferential expression of T-box transcription factor T-bet (encoded by Tbx21) and the production of cytokine IFN-γ, but the relationship between the developmental process and iNKT1 lineage diversification in the thymus remains elusive. We report in the present study a crucial role of programmed cell death 5 (PDCD5) in iNKT cell terminal maturation and iNKT1 fate determination. Mice with T cell-specific deletion of PDCD5 had decreased numbers of thymic and peripheral iNKT cells with a predominantly immature phenotype and defects in response to α-galactosylceramide. Loss of PDCD5 also selectively abolished the iNKT1 lineage by reducing T-bet expression in iNKT cells at an early thymic developmental stage (before CD44 upregulation). We further demonstrated that TOX2, one of the high mobility group proteins that was highly expressed in iNKT cells at stage 1 and could be stabilized by PDCD5, promoted the permissive histone H3K4me3 modification in the promoter region of Tbx21. These data indicate a pivotal and unique role of PDCD5/TOX2 in iNKT1 lineage determination. They also suggest that the fate of iNKT1 may be programmed at the developmental stage of iNKT cells in the thymus.

摘要

不变自然杀伤 T 细胞 1(iNKT1)细胞的特征是优先表达 T 盒转录因子 T 细胞因子(Tbx21)和细胞因子 IFN-γ的产生,但在胸腺中的发育过程和 iNKT1 谱系分化之间的关系仍然难以捉摸。我们在本研究中报告了程序性细胞死亡 5(PDCD5)在 iNKT 细胞终末成熟和 iNKT1 命运决定中的关键作用。PDCD5 特异性缺失 T 细胞的小鼠,其胸腺和外周 iNKT 细胞数量减少,主要表现为不成熟表型,并对α-半乳糖基神经酰胺的反应缺陷。PDCD5 的缺失也通过在早期胸腺发育阶段(在 CD44 上调之前)降低 iNKT 细胞中的 T-bet 表达,选择性地消除了 iNKT1 谱系。我们进一步证明,TOX2 是高迁移率族蛋白之一,在 iNKT 细胞的 1 期高度表达,并且可以被 PDCD5 稳定,促进 Tbx21 启动子区域的允许性组蛋白 H3K4me3 修饰。这些数据表明 PDCD5/TOX2 在 iNKT1 谱系决定中具有关键和独特的作用。它们还表明,iNKT1 的命运可能在胸腺中 iNKT 细胞的发育阶段就已经编程。

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